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Inertia Effects in High-Rate Flow Through Heterogeneous Porous Media
Authors:Email author" target="_blank">M?FourarEmail author  R?Lenormand  M?Karimi-Fard  R?Horne
Institution:(1) Laboratoire drsquoEnergétique et de Mécanique Théorique et Appliquée, Ecole des Mines de Nancy, Parc de Saurupt, 54042 Cedex, Nancy, France;(2) Institut Français du Pétrole, 1 et 4, avenue de Bois Préau, 92852, Rueil Malmaison, Cedex, France;(3) Department of Petroleum Engineering, Stanford University, 367, Panama Street, Stanford, CA 94305-2220, USA
Abstract:The paper deals with the effects of large scale permeability–heterogeneity on flows at high velocities through porous media. The media is made of a large number of homogeneous blocks where the flow is assumed to be governed by the Forchheimer equation with a constant inertial coefficient. By assuming the validity of the Forchheimer equation at the large scale, an effective inertial coefficient is deduced from numerical simulations. Different media are investigated: serial-layers, parallel-layers and correlated media. The numerical results show that: (i) for the serial-layers, the effective inertial coefficient is independent of the Reynolds number and decreases when the variance and the mean permeability ratio increases; (ii) for the parallel-layers and the correlated media, the effective inertial coefficient is function of the Reynolds number and increases when the variance and the mean permeability ratio increases. Theoretical relationships are proposed for the inertial coefficient as function of the Reynolds number and the characteristics of the media.
Keywords:heterogeneous porous media  flow at high-velocity  Forchheimerrsquos equation" target="_blank">gif" alt="rsquo" align="BASELINE" BORDER="0">s equation  effective inertial coefficient
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